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直接电刺激诱发的高频活动的语言网络的概率映射。

Probabilistic mapping of language networks from high frequency activity induced by direct electrical stimulation.

机构信息

CNRC, Laboratoire de Psychologie et NeuroCognition, University of Grenoble Alpes, University of Savoie Mont Blanc, Grenoble, France.

Institut Universitaire de, Paris, France.

出版信息

Hum Brain Mapp. 2020 Oct 1;41(14):4113-4126. doi: 10.1002/hbm.25112. Epub 2020 Jul 22.

Abstract

Direct electrical stimulation (DES) at 50 Hz is used as a gold standard to map cognitive functions but little is known about its ability to map large-scale networks and specific subnetwork. In the present study, we aim to propose a new methodological approach to evaluate the specific hypothesis suggesting that language errors/dysfunction induced by DES are the result of large-scale network modification rather than of a single cortical region, which explains that similar language symptoms may be observed after stimulation of different cortical regions belonging to this network. We retrospectively examined 29 patients suffering from focal drug-resistant epilepsy who benefitted from stereo-electroencephalographic (SEEG) exploration and exhibited language symptoms during a naming task following 50 Hz DES. We assessed the large-scale language network correlated with behavioral DES-induced responses (naming errors) by quantifying DES-induced changes in high frequency activity (HFA, 70-150 Hz) outside the stimulated cortical region. We developed a probabilistic approach to report the spatial pattern of HFA modulations during DES-induced language errors. Similarly, we mapped the pattern of after-discharges (3-35 Hz) occurring after DES. HFA modulations concurrent to language symptoms revealed a brain network similar to our current knowledge of language gathered from standard brain mapping. In addition, specific subnetworks could be identified within the global language network, related to different language processes, generally described in relation to the classical language regions. Spatial patterns of after-discharges were similar to HFA induced during DES. Our results suggest that this new methodological DES-HFA mapping is a relevant approach to map functional networks during SEEG explorations, which would allow to shift from "local" to "network" perspectives.

摘要

直接电刺激(DES)在 50Hz 时被用作绘制认知功能的金标准,但对于其绘制大规模网络和特定子网的能力知之甚少。在本研究中,我们旨在提出一种新的方法学方法来评估一个特定的假设,即 DES 诱导的语言错误/功能障碍是大规模网络改变的结果,而不是单个皮质区域的结果,这解释了为什么在刺激属于该网络的不同皮质区域后可能会观察到类似的语言症状。我们回顾性检查了 29 例因药物难治性癫痫而受益于立体脑电图(SEEG)探索并在 50Hz DES 后进行命名任务时出现语言症状的患者。我们通过量化刺激皮质区域外的高频活动(HFA,70-150Hz)在 DES 诱导的行为反应(命名错误)中所引起的变化,评估与行为 DES 诱导的反应相关的大规模语言网络。我们开发了一种概率方法来报告 DES 诱导语言错误期间 HFA 调制的空间模式。同样,我们绘制了 DES 后出现的放电(3-35Hz)的模式。与语言症状同时发生的 HFA 调制揭示了一个与我们从标准脑映射中获得的关于语言的当前知识相似的脑网络。此外,可以在全局语言网络内识别与不同语言过程相关的特定子网,这些过程通常与经典语言区域相关。放电后的空间模式与 DES 期间诱导的 HFA 相似。我们的结果表明,这种新的 DES-HFA 映射方法是在 SEEG 探索期间绘制功能网络的一种有效方法,可以从“局部”观点转向“网络”观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f550/7469846/bd3da1597ce7/HBM-41-4113-g001.jpg

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